The IDEAL-Cell concept is based on the junction between a PCFC anode/electrolyte section and a SOFC cathode/electrolyte section, through a mixed proton and oxide ion conducting porous ceramic membrane, operating in the temperature range 600-700°C. Recombination of ions takes place within the junction, or central membrane (CM), and water vapor is evacuated through open porosity. The first results on the fabrication of multilayered samples reproducing the IDEAL-Cell structure are reported here, together with electrochemical tests carried out on selected samples in order to evaluate the performances of the chosen materials and to demonstrate the feasibility of this innovative concept of fuel cell. Keywords:

IDEAL-Cell , an Innovative Dual mEmbrAne fueL-Cell : Fabrication and Electrochemical Testing of First Prototypes

S Presto;A Barbucci;M Viviani;
2009

Abstract

The IDEAL-Cell concept is based on the junction between a PCFC anode/electrolyte section and a SOFC cathode/electrolyte section, through a mixed proton and oxide ion conducting porous ceramic membrane, operating in the temperature range 600-700°C. Recombination of ions takes place within the junction, or central membrane (CM), and water vapor is evacuated through open porosity. The first results on the fabrication of multilayered samples reproducing the IDEAL-Cell structure are reported here, together with electrochemical tests carried out on selected samples in order to evaluate the performances of the chosen materials and to demonstrate the feasibility of this innovative concept of fuel cell. Keywords:
2009
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
978-954-92483-1-9
Solid Oxide Fuel Cell
LSCF
Plasma Spray
Electrochemical Impedance Spectroscopy
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Descrizione: Presto et al. - 2009 - IDEAL-Cell , an Innovative Dual mEmbrAne fueL-Cell Fabrication and Electrochemical Testing of First Prototypes
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/202469
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